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首页> 外文期刊>Hydrobiologia >Grazing efficiency asymmetry drives zooplankton top-down control on phytoplankton in a subtropical lake dominated by non-toxic cyanobacteria
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Grazing efficiency asymmetry drives zooplankton top-down control on phytoplankton in a subtropical lake dominated by non-toxic cyanobacteria

机译:放牧效率不对称在亚热带湖中的浮游植物上的浮游动物自上而下的控制,由无毒的苏析曲线组成

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摘要

Body size is considered a powerful trait that impacts ecosystem processes and mediates species responses to environmental change. Diversity metrics informed by body size could thus predict ecosystem functions better than taxonomic diversity. However, despite its overwhelming power, the mechanisms by which size drives functions in freshwater ecosystems remain poorly known. Two mechanisms are often hypothesized to explain the relationship between diversity and ecosystem functioning: selection effects and complementarity. Here, we evaluate the relative importance of size-based and taxon-based approaches in explaining the strength of top-down control on phytoplankton and also aimed at disentangling the mechanism by which size operates. We found that size significantly explained the variation in top-down control, but size together with taxonomic diversity provided better predictions. The latter result differs somewhat from those reported in temperate regions and potentially reflects the limited size range that is typical of warmer waters. Our results also reveal the importance of selection effects relative to complementarity as a driver of top-down control. We highlight the importance of considering multiple aspects of biodiversity and recommend that metrics based on body size should complement, rather than replace, metrics of taxonomic diversity to predict ecosystem functions.
机译:体型被认为是强大的特质,影响生态系统过程,并介导物种对环境变化的反应。因此,身体大小通知的多样性度量可以预测生态系统的功能优于分类学多样性。然而,尽管其压倒性的功率,所以在淡水生态系统中的尺寸驱动功能的机制仍然是知名的。经常假设两个机制是为了解释多样性和生态系统之间的关系:选择效果和互补性。在这里,我们评估基于尺寸的和基于分类的方法的相对重要性,以解释浮游植物上的自上而下控制的强度,并旨在解开尺寸运行的机制。我们发现大小明显解释了自上而下控制的变化,但大小与分类学多样性一起提供了更好的预测。后一种结果与温带地区报告的结果有所不同,并且可能反映典型的温暖水域的有限尺寸范围。我们的结果还揭示了选择效果相对于互补性作为自上而下控制的驾驶员的重要性。我们突出了考虑生物多样性多个方面的重要性,并建议基于体型的指标应该补充,而不是替换分类多样性的指标,以预测生态系统功能。

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